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AD712 Datasheet(PDF) 12 Page - Analog Devices |
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AD712 Datasheet(HTML) 12 Page - Analog Devices |
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12 / 15 page ![]() AD712 REV. B –12– 100 10 0% 90 200ns 500mV PD711 BUFF –10V ADC IN a. Source Current = 2 mA 100 10 0% 200ns 90 500mV PD711 BUFF –5V ADC IN b. Sink Current = 1 mA Figure 35. ADC Input Unity Gain Buffer Recovery Times DRIVING A LARGE CAPACITIVE LOAD The circuit in Figure 36 employs a 100 Ω isolation resistor which enables the amplifier to drive capacitive loads exceeding 1500 pF; the resistor effectively isolates the high frequency feedback from the load and stabilizes the circuit. Low frequency feedback is returned to the amplifier summing junction via the low pass filter formed by the 100 Ω series resistor and the load capacitance, CL. Figure 37 shows a typical transient response for this connection. 1/2 AD712 0.1 F 0.1 F –VIN +VIN INPUT TYPICAL CAPACITANCE LIMIT FOR VARIOUS LOAD RESISTORS R1 C1 UP TO 2k 1500pF 10k 1500pF 20 1000pF C1 R1 4.99k 4.99k 30pF OUTPUT 100 + – – + Figure 36. Circuit for Driving a Large Capacitive Load 100 90 10 0% 1 s 5V Figure 37. Transient Response RL = 2 kΩ, CL = 500 pF ACTIVE FILTER APPLICATIONS In active filter applications using op amps, the dc accuracy of the amplifier is critical to optimal filter performance. The amplifier’s offset voltage and bias current contribute to output error. Offset voltage will be passed by the filter and may be amplified to produce excessive output offset. For low frequency applications requiring large value input resistors, bias currents flowing through these resistors will also generate an offset voltage. In addition, at higher frequencies, an op amp’s dynamics must be carefully considered. Here, slew rate, bandwidth, and open-loop gain play a major role in op amp selection. The slew rate must be fast as well as symmetrical to minimize distortion. The amplifier’s bandwidth in conjunction with the filter’s gain will dictate the frequency response of the filter. The use of a high performance amplifier such as the AD712 will minimize both dc and ac errors in all active filter applications. |
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